Df. Brougham et al., THE CORRELATION BETWEEN HYDROGEN-BOND TUNNELING DYNAMICS AND THE STRUCTURE OF BENZOIC-ACID DIMERS, The Journal of chemical physics, 105(3), 1996, pp. 979-982
We report a correlation between the rate of incoherent tunneling assoc
iated with proton transfer in hydrogen bonds and the structure of arom
atic carboxylic acid dimers. The compressibility of the hydrogen bond
in benzoic acid, specifically the oxygen-oxygen distance r(O..O), has
been measured as a function of hydrostatic pressure up to 3.2 kbar usi
ng neutron powder diffraction. All data were recorded at a temperature
of 5 K. Using previously published pressure dependence NMR measuremen
ts, we have investigated the relationship between the dynamics in the
quantum regime and r(O..O) in the hydrogen bonds of benzoic acid. The
incoherent tunneling rate increases exponentially with decreasing r(O.
.O). This behavior is attributed to the increase in the tunneling matr
ix element as the potential wells and the localized eigenfunctions of
the double minimum potential which characterize the system are brought
into closer proximity. There is a quantitative agreement between this
study, in which the hydrogen bonds are compressed by the application
of pressure, and the behavior exhibited by two benzoic acid derivative
s with different oxygen-oxygen distances at ambient pressure. (C) 1996
American Institute of Physics.